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一种可视化人类大脑皮质血管三维结构的新方法。

A novel method to visualise the three-dimensional organisation of the human cerebral cortical vasculature.

机构信息

Clinical Neurosciences, Clinical and Experimental Sciences, University of Southampton, Southampton, UK.

Biomedical Imaging Unit, Southampton General Hospital, University of Southampton, Southampton, UK.

出版信息

J Anat. 2018 Jun;232(6):1025-1030. doi: 10.1111/joa.12805. Epub 2018 Mar 9.

Abstract

Current tissue-clearing protocols for imaging in three dimensions (3D) are typically applied to optimally fixed, small-volume rodent brain tissue - which is not representative of the tissue found in diagnostic neuropathology laboratories. We present a method to visualise the cerebral cortical vasculature in 3D in human post-mortem brain tissue which had been preserved in formalin for many years. Tissue blocks of cerebral cortex from two control cases, two Alzheimer's brains and two cases from Alzheimer's patients immunised against Aβ were stained with fluorescent Lycopersicon esculentum agglutinin (Tomato lectin), dehydrated and cleared using an adapted three-dimensional imaging of solvent cleared organs (3DISCO) protocol to visualise the vascular endothelium. Tissue was imaged using light sheet and confocal microscopy and reconstructed in 3D using amira software. The method permits visualisation of the arrangement of the parallel penetrating cortical vasculature in the human brain. The presence of four vascular features including anastomosis, U-shaped vessels, spiralling and loops were revealed. In summary, we present a low cost and simple method to visualise the human cerebral vasculature in 3D compatible with prolonged fixation times (years), allowing study of vascular involvement in a range of normative and pathological states.

摘要

目前用于三维(3D)成像的组织清除方案通常适用于最佳固定的小体积啮齿动物脑组织 - 这与诊断神经病理学实验室中发现的组织不具有代表性。我们提出了一种在福尔马林保存多年的人类尸检脑组织中可视化 3D 大脑皮质血管的方法。使用荧光 Lycopersicon esculentum agglutinin(番茄凝集素)对来自两个对照病例、两个阿尔茨海默病大脑和两个接受 Aβ免疫的阿尔茨海默病患者的大脑皮质组织块进行染色,然后使用经过改良的三维成像溶剂清除器官(3DISCO)方案进行脱水和清除,以可视化血管内皮细胞。使用光片和共聚焦显微镜对组织进行成像,并使用 amira 软件在 3D 中进行重建。该方法允许可视化人脑内平行穿透性皮质血管的排列。揭示了包括吻合、U 形血管、螺旋和环在内的四种血管特征的存在。总之,我们提出了一种低成本且简单的方法来可视化 3D 中的人类脑血管,该方法与长时间固定(数年)兼容,允许研究各种正常和病理状态下的血管受累情况。

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